期刊文献+

相移长周期光纤光栅的透射谱特性及其切趾优化 被引量:2

Transmission spectra characteristics of phase-shifted long-period fiber gratings and apodized optimization
下载PDF
导出
摘要 应用耦合模理论和传输矩阵法计算模拟了均匀长周期光纤光栅的透射谱,采用不同的切趾函数对其进行了切趾优化,通过比较得出了最佳的切趾函数。分析了引入多个π相移的相移长周期光纤光栅的透射谱结构,发现其具有一个通带、两个阻带的滤波特性。着重分析了相移个数,引入位置等参数对谱结构的影响。除运用传统的高斯函数折射率切趾方法对透射谱进行优化外,尝试了一种新型的长度切趾方法,达到了较好的优化效果。该方法的易实现性为切趾相移长周期光纤光栅的实际制作带来了方便。 Based on the coupled-mode theory, the transfer-matrix method is used to calculate the transmission spectra of π phase-shifted long-period fiber gratings(LPFG). It is found that multi-π-phase-shifted LPFG is a filter with two stopbands and one passband , and the pass band width increases with number of π phase shift. Index apodization method and a new length apodization method are used to optimize the transmission spectra of phase-shifted LPFGs. And the easily realization of the new length apodization method can facilitate the fabrication of phase-shifted LPFG.
出处 《量子电子学报》 CAS CSCD 北大核心 2006年第5期725-730,共6页 Chinese Journal of Quantum Electronics
基金 上海市教委基础研究重大项目(04JC14036) 上海市教委重点学科资助项目(T0104)
关键词 纤维与波导光学 相移长周期光纤光栅 耦合模 传输矩阵 切趾 fiber and waveguide optics phase-shifted long-period fiber grating(LPFG) coupled-mode transfer-matrix apodization
  • 相关文献

参考文献4

二级参考文献22

  • 1A.Yariv 于荣金(译).晶体中的光波[M].北京:科学出版社,1991.383-385.
  • 2[1]Yamada M, Kanamori T, Terunuma Y, et al.Fluoride-based erbium-doped fiber amplifier with inherently flat gain spectrum. IEEE Photon Technol Lett, 1996,8(7): 882~884
  • 3[2]Yun S K, Lee B W, Kim H K, et al. Dynamic erbium-doped fiber amplifier based on active gain flattening with a fiber acoustooptic tunable filter. IEEE Photon Technol Lett, 1999,11(10):1229~1231
  • 4[3]Liaw S K, Ho K P, Chi S. Dynamic power-equalized EDFA module based on strain tunable fiber Bragg gratings. IEEE Photon Technol Lett, 1999,11(7):797~799
  • 5[4]Wysocki P F, Judkins J B, Espindola R P, et al. Broad-band erbium-doped fiber amplifier flattened beyond 40nm using long-period grating filter. IEEE Photon Technol Lett, 1997,9(10): 1343~1345
  • 6[5]Pandit M K, Chiang K S, Chen Z H, et al. Tunable long-period fiber gratings for EDFA gain and ASE equalization. Microwave and Opt Technol Lett, 1999,25(4):181~184
  • 7[6]Rao Y J, Wang Y P, Ran Z L,et al. Characteristics of novel long-period fiber gratings written by focused high-frequency CO2 laser pulses. Proc Asia-Pacific Optical and Wireless Communications Conference,Beijing, China, 2001. 4581~54
  • 8[7]Davis D D, Gaylord T K, Glytsis E N, et al. Long period fiber grating fabrication with focused CO2 laser pulses. Electron Lett, 1998,34(3):302~304
  • 9[8]Davis K M, Miura K, Sugimoto N, et al. Writing waveguides in glass with a femtosecond laser. Opt Lett, 1996,21(21):1729~1731
  • 10[9]Drozin L, Fonjallaz P Y,Stensland L. Long period fiber gratings written by CO2 exposures of H2-loaded standard fibers. Electron Lett,2000,36(8):742~744

共引文献26

同被引文献22

  • 1侯尚林,黄海宇,黄永清,张霞,任晓敏.可调谐长周期光纤光栅压力传感的实验研究[J].光电子.激光,2009,20(4):443-446. 被引量:5
  • 2陈少华,赵启大,刘丽辉,张东生,姚颖,郭澎,闫宇,董孝义.基于级联长周期光纤光栅的新颖温度传感器[J].量子电子学报,2005,22(6):955-959. 被引量:14
  • 3Vengsarkar A M, Lemaire P J, Judkins J B,et al. Long-period fiber gratings as band-rejection filters[J]. J. Lightwave Technol,1996,14(1) :58-65.
  • 4Sakata H,Nishio K,Ichikawa M. Tunable bandpass filter based on force-induced long-period fiber grating in a double cladding fiber[J]. Opt. Lett., 2010,35(7) : 1061-1063.
  • 5Ke H,Chiang K S,Peng J H. Analysis of phase-shifted long period fiber gratings[J]. IEEE Photon. Technol. Lett., 1998,10 (11) :1596-1598.
  • 6Liu Y,Williams J A R,Zhang L,et al. Phase shifted and cascaded long-period fiber gratings[J]. Opt. Commun, 1999,164:27-31.
  • 7Quian J R,Chen H F. Gain flattening fiber filters using phaseshifted long period fiber gratings[J]. Electron. Lett, 1998,34 (11) :1132-1133.
  • 8Falate R, Frazao O, Rego G, et al. Refractometic sensors based on a phase-shifted fiber gratings[J]. Appl. Opt. ,2006,45(21), 5066-5072.
  • 9Malki A, Humbert G. Analysis and fabrication by electric-arc technique of high performance bandpass filters based on phase-shifted long period fiber gratings[A]. Proc of SPIE[C]. 2003,39(21): 1506-1507.
  • 10Gu Y,Ohiang K S, Rao Y J. Writing of apodized phase-shifted long-period fiber gratings with a computer-controlled CO2 laser [J]. IEEE Photo. Technol. Lett. ,2009,21(10):657-659.

引证文献2

二级引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部